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Thermal Contraction of AA5182 for Prediction of Ingot Distortions

机译:AA5182的热收缩,用于预测铸锭扭曲

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Shape distortions and hot cracking during casting are strongly related to thermal contraction during and after solidification. The understanding of this phenomenon is crucial in designing defect-free cast products and in numerical simulation of their thermomechanical behavior. This paper presents the results of experimental and numerical simulation work on the thermal contraction during and after solidification of a commercial AA5182 alloy. In the specially developed experimental set-up, the contraction is measured simultaneously with temperature while the material solidifies and cools down in the solid state. An elasto-viscoplastic constitutive model fitted to experimental data is used in finite element simulations of the contraction process. The implementation of thermal contraction data for ingot distortion during the start-up phase of casting is also included. The results show that the contraction starts at a certain temperature in the non-equilibrium solidification range, close to the non-equilibrium solidus. Good agreement is found between simulation and experimental results.
机译:铸造期间的形状扭曲和热裂纹与凝固期间和之后的热收缩牢固相关。对这种现象的理解在设计无缺陷铸造产品和它们的热机械行为的数值模拟中是至关重要的。本文介绍了在商业AA5182合金的凝固过程中和之后的热收缩的实验和数值模拟工作的结果。在专门开发的实验设置中,在材料固化并在固态中凝固并冷却,同时测量收缩。适用于实验数据的弹性粘性结构型模型用于收缩过程的有限元模拟。还包括在铸造的启动阶段期间的铸锭变形的热收缩数据的实现。结果表明,收缩在非平衡凝固范围内的一定温度开始,接近非平衡固体。模拟和实验结果之间存在良好的一致性。

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